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Electrophysiological measurement of the visual field

机译:视野的电生理测量

摘要

The multifocal pattern visual evoked potential (VEP) has been adapted to detect visual field loss as a form of objective perimetry, with specific application to glaucoma. Multifocal pattern stimuli are cortically scaled and presented using a standard system. In order to effectively record the visual field responses, a unique array of bipolar occipital straddle electrode positions are employed, overlying the occipital visual cortex. Multi-channel VEP recording is then performed using these electrode positions. The responses are combined from the channels to produce a representation of the visual up to 25° of eccentricity. Analysis of results to detect early field defects is enhanced by asymmetry analysis between fellow eyes, and by a scaling algorithm to compensate for inter-individual variations. VEP objective perimetry corresponds well with subjective Humphrey visual field defects, showing loss of signal in the areas of visual field loss. Further, it shows reductions in areas of the visual field in glaucoma suspects where subjective testing is still within normal limits. This technique represents the first practical application of the multifocal pattern VEP to objective detection of visual field defects in glaucoma, and may have the potential for detecting disease at an earlier stage than conventional testing.
机译:多焦点模式视觉诱发电位(VEP)已被适配为检测视野丧失,作为客观视野检查的一种形式,特别适用于青光眼。使用标准系统对多焦点模式刺激进行皮质缩放并显示。为了有效地记录视野响应,采用了双极枕骨跨电极位置的唯一阵列,该阵列覆盖枕骨视皮层。然后使用这些电极位置执行多通道VEP记录。来自通道的响应被组合起来,以产生高达25°的离心率的视觉表示。通过另一只眼睛之间的不对称分析以及补偿个体间差异的缩放算法,可以增强对早期现场缺陷检测结果的分析能力。 VEP客观视野检查法与主观汉弗莱视野缺损非常吻合,在视野缺损区域显示信号丢失。此外,它显示出主观检查仍在正常范围内的青光眼可疑者视野范围的减少。该技术代表了多焦点模式VEP在青光眼的视野缺损的客观检测中的首次实际应用,并且比常规检测在早期阶段可能具有检测疾病的潜力。

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